VISUAL DISPLAY SYSTEM AND METHOD FOR DISPLAYING A VIDEO SIGNAL
A video display system (100) is provided which comprises a display panel (DP) for displaying a video signal (V), at least one lighting unit (LU) for providing a surround or ambient lighting (LS), a user interface (UI) for receiving external user calibration signals and a lighting control unit (LC) for controlling the color and/or luminance of the lighting unit (LU) in dependence on the calibration signals received by the user interface (UI).
1 . A video display system, comprising:
a display panel for displaying a video signal,
at least one lighting unit for providing a surround or ambient lighting,
a user interface for receiving external user calibration signals, and
a lighting control unit for controlling a color and/or a luminance of the lighting unit in dependence on the calibration signals received by the user interface.
2 . The video display system according to claim 1 , further comprising:
a test patch generator for generating at least one test patch and for forwarding the test patch to the display panel such that the test patch is displayed on the display panel,
wherein the user interface is adapted to receive the external user calibration signal in response to the display of the at least one test patch.
3 . The video display system according to claim 1 , wherein during a calibration operation the user interface is activated for receiving external user calibration signals,
wherein during the calibration operation the test patch generator is initiated to generate at least one test patch and to forward the test patch to the display panel.
4 . The video display system according to claim 1 , wherein settings for the lighting unit based on the received external user calibration signals are stored in a non-volatile memory.
5 . A method for displaying a video signal on a video display system, comprising the steps of:
displaying a video signal on a display panel,
providing a surround or ambient lighting by at least one lighting unit
receiving external user calibration signals by a user interface, and
controlling the color and/or the luminance of the lighting unit in dependence on the calibration signals received by the user interface.